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首页> 外文期刊>Annali di Chimica: Journal of Analytical and Environmental Chemistry >Effect of lipophylic salts on ise detection limit: application to calixarene-based highly efficient potassium-selective electrodes
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Effect of lipophylic salts on ise detection limit: application to calixarene-based highly efficient potassium-selective electrodes

机译:亲脂盐对离子检测极限的影响:在基于杯芳烃的高效钾选择电极中的应用

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摘要

A new interpretative model for interpolation of potentiometric data from liquid membrane ion selective electrodes has been formulated; the model allows one to achieve information about partitioning equilibria establishing at the membrane-analysed solution interface of hydrophilic cations present in the membrane as counterions of exchanger lipophylic anions. The fundamental importance of such equilibria is related to their contribution to the detection limit of the electrodes. The soundness of the proposed model was positively verified by employing it in the characterization of new K~+-selective electrodes based on a calixarenic ionophore. Although the validity of interpolation based on our model does not significantly differ from that obtained with the simple model providing the inclusion of a constant parameter in the logarithmic argument of Nicolski-Eisenman's equation, the information obtained resulted to be analytically suitable for optimising the membrane composition and, as a consequence, the performance of the electrodes.
机译:建立了一个新的解释模型,用于内插来自液膜离子选择电极的电位数据。该模型允许人们获得有关分配平衡的信息,该平衡建立在膜分析的溶液中作为交换亲脂性阴离子的抗衡离子存在于膜中的亲水性阳离子的界面处。这种平衡的基本重要性与它们对电极的检测极限的贡献有关。通过将其用于基于杯芳烃离子载体的新型K〜+选择性电极的表征中,对所提出模型的正确性进行了积极验证。尽管基于我们模型的插值有效性与简单模型(在Nicolski-Eisenman方程的对数参数中包含常数参数)所获得的有效性没有显着差异,但所获得的信息在分析上适合于优化膜组成结果是电极的性能。

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